This study investigates the durability of alkali-activated slag mortar exposed to abrasion and fire. Alkali-activated slag mortar is made by activating ground-granulated blast furnace slag with sodium hydroxide, sodium carbonate, sodium metasilicate and sodium silicate without adding Portland cement. Mortars were made with CEN reference sand, ground granulated blast-furnace slag, alkali-activator and natural spring water. The sand-slag and water-slag materials ratios were 3.0 and 0.50 for all mixtures, respectively. At 28 days, the specimens were exposed to horizontal Bohme abrasion and vertical grinding abrasion tests and to an elevated temperature of 1000 degrees C for a fire test. The highest abrasion resistance was observed from the sla...
Concretes, depending on their application, may be exposed to elevated temperatures during their life...
The strength development of Portland cement mortar, blended cement-slag mortars and alkali activated...
This study investigates the long-term (570 days) performance of alkali-activated slag (AAS) mortar e...
This study investigates the durability of alkali-activated slag mortar exposed to abrasion and fire....
In this study, some durability properties of alkali-activated slag (geopolymer) mortars were investi...
The aim of the present study is to investigate some properties of alkali-activated mortars containin...
The paper assesses the durability of one-part alkali-activated slag-based mortars (AAS) in different...
This work investigates the strength and durability of alkali activated blast furnace slag mortars (A...
In this study, changes in the mechanical and microstructural properties of alkali-activated blast fu...
In this study, changes in the mechanical and microstructural properties of alkali-activated blast fu...
The mechanical strength variation of ambient cured Alkali-activated mortar (AAS) upon exposure to el...
This investigation aims to provide experimental data on the performance of alkali-activated mortar m...
This study aims at investigating the use of coal fly ash-based alkali activated mortars as passive f...
Despite the advances in studies utilizing industrial, construction and agricultural wastes as altern...
In this study, the effect of dosage and modulus of activator on the strength of alkali activated sla...
Concretes, depending on their application, may be exposed to elevated temperatures during their life...
The strength development of Portland cement mortar, blended cement-slag mortars and alkali activated...
This study investigates the long-term (570 days) performance of alkali-activated slag (AAS) mortar e...
This study investigates the durability of alkali-activated slag mortar exposed to abrasion and fire....
In this study, some durability properties of alkali-activated slag (geopolymer) mortars were investi...
The aim of the present study is to investigate some properties of alkali-activated mortars containin...
The paper assesses the durability of one-part alkali-activated slag-based mortars (AAS) in different...
This work investigates the strength and durability of alkali activated blast furnace slag mortars (A...
In this study, changes in the mechanical and microstructural properties of alkali-activated blast fu...
In this study, changes in the mechanical and microstructural properties of alkali-activated blast fu...
The mechanical strength variation of ambient cured Alkali-activated mortar (AAS) upon exposure to el...
This investigation aims to provide experimental data on the performance of alkali-activated mortar m...
This study aims at investigating the use of coal fly ash-based alkali activated mortars as passive f...
Despite the advances in studies utilizing industrial, construction and agricultural wastes as altern...
In this study, the effect of dosage and modulus of activator on the strength of alkali activated sla...
Concretes, depending on their application, may be exposed to elevated temperatures during their life...
The strength development of Portland cement mortar, blended cement-slag mortars and alkali activated...
This study investigates the long-term (570 days) performance of alkali-activated slag (AAS) mortar e...